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The High Performance Tractive Force Control Method of Propulsion Control System for Electric Railway Vehicles

机译:电气铁路车辆推进控制系统的高性能牵引力控制方法

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This paper proposes the high performance tractive force control method of propulsion control system for electric railway vehicles. Using the PWM method progressed in the propulsion control system for electric railway vehicles, the harmonics of output have been reduced. This led to the proposal of a PWM method with a superior variable speed control. This method combined the SVM (Space Vector Modulation) overmodulation method and the low frequency synchronous PWM method to form the operating switching frequency of under 500Hz. Also, This paper presents a new vector control for induction motor drives in a One-Pulse PWM mode of inverter. For traction drives the inverter usually operates in this mode in a high speed region. The amplitude of voltage is restricted constant in this mode. The conventional vector control is not applicable as it requires controllability of the amplitude and the phase of the voltage vector for all time. The proposed scheme provides quick torque response even in the One-Pulse mode. To verify the validity of the proposed control method, experiment was carried out using a 1.65 MVA class railway vehicle propulsion control systems with a 3300V/1200A IGBT, the inertial load with an equivalent modelling of railway vehicles 80 tons and readhesion running test at field.
机译:本文提出了电气铁路车辆推进控制系统的高性能牵引力控制方法。使用PWM方法进展在用于电气铁路车辆的推进控制系统中,输出的谐波已经减少。这导致了具有卓越的变速控制的PWM方法的提议。该方法组合SVM(空间向量调制)过调制方法和低频同步PWM方法,形成500Hz下的操作开关频率。此外,本文为逆变器单脉冲PWM模式提供了一种用于感应电动机驱动的新矢量控制。对于牵引驱动器,逆变器通常在高速区域中以这种模式操作。在此模式下,电压的幅度受到限制。传统的矢量控制不适用于所有时间需要电压矢量的幅度和电压矢量的相位的可控性。即使在单脉冲模式下,所提出的方案也提供了快速的扭矩响应。为了验证所提出的控制方法的有效性,使用具有3300V / 1200A IGBT的1.65 MVA级铁路车辆推进控制系统进行实验,具有相同的铁路车辆建模80吨和现场Readauntion运行测试的惯性载荷。

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